Scanning transmission electron microscopy (STEM) allows for imaging, diffraction, and spectroscopy of materials on length scales ranging from microns to atoms. By using a high-speed, direct electron detector, it is now possible to record a full two-dimensional (2D) image of the diffracted electron beam at each probe position, typically a 2D grid of probe positions. These 4D-STEM datasets are rich in information, including signatures of the local structure, orientation, deformation, electromagnetic fields, and other sample-dependent properties. However, extracting this information requires complex analysis pipelines that include data wrangling, calibration, analysis, and visualization, all while maintaining robustness against imaging distort...
The following 4D-STEM data sets were collected on the ThemIS and TitanX scanning transmission electr...
The arrival of direct electron detectors (DEDs) with high frame rates in the field of scanning trans...
This Jupyter Notebook was originally presented at the "ORNL/CNMS Virtual Workshop: AI for Atoms: How...
Scanning transmission electron microscopy (STEM) allows for imaging, diffraction, and spectroscopy o...
Scanning transmission electron microscopy (STEM) allows for imaging, diffraction, and spectroscopy o...
Scanning transmission electron microscopy (STEM) allows for imaging, diffraction, and spectroscopy o...
151 pagesThe development of fast pixelated direct electron detectors allows the collection of full s...
The following 4D-STEM data sets were collected on the ThemIS and TitanX scanning transmission electr...
53 pagesThe goal of microscopy is to take position-resolved data of things invisible & small and tra...
This work presents the new template matching capabilities implemented in Pyxem, an open source Pytho...
4D-STEM data frequently requires a number of calibrations in order to make accurate measurement: for...
A modern scanning electron microscope equipped with a pixelated detector of transmitted electrons ca...
This thesis discusses various large multi-dimensional dataset analysis methods and their application...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
The following 4D-STEM data sets were collected on the ThemIS and TitanX scanning transmission electr...
The arrival of direct electron detectors (DEDs) with high frame rates in the field of scanning trans...
This Jupyter Notebook was originally presented at the "ORNL/CNMS Virtual Workshop: AI for Atoms: How...
Scanning transmission electron microscopy (STEM) allows for imaging, diffraction, and spectroscopy o...
Scanning transmission electron microscopy (STEM) allows for imaging, diffraction, and spectroscopy o...
Scanning transmission electron microscopy (STEM) allows for imaging, diffraction, and spectroscopy o...
151 pagesThe development of fast pixelated direct electron detectors allows the collection of full s...
The following 4D-STEM data sets were collected on the ThemIS and TitanX scanning transmission electr...
53 pagesThe goal of microscopy is to take position-resolved data of things invisible & small and tra...
This work presents the new template matching capabilities implemented in Pyxem, an open source Pytho...
4D-STEM data frequently requires a number of calibrations in order to make accurate measurement: for...
A modern scanning electron microscope equipped with a pixelated detector of transmitted electrons ca...
This thesis discusses various large multi-dimensional dataset analysis methods and their application...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
The following 4D-STEM data sets were collected on the ThemIS and TitanX scanning transmission electr...
The arrival of direct electron detectors (DEDs) with high frame rates in the field of scanning trans...
This Jupyter Notebook was originally presented at the "ORNL/CNMS Virtual Workshop: AI for Atoms: How...